Laser engraving has considerable potential for the rapid and cost effective manufacturing of polymeric microfluidic devices. However, fabricated devices are hindered by relatively large surface roughness in the engraved areas, which can perturb smooth fluidic flow and can damage sensitive biological components. This effect is exacerbated when engraving at depths beyond the laser focal range, limiting the production of large aspect ratio devices such as microbioreactors. This work aims to overcome such manufacturing limitations and to realise more reproducible and defect free microfluidic channels and structures. We present a strategy of multiple engraving passes alongside solvent polymer reflow for shallow depth ( 500 mu m) features. To exa...
Microchannel is widely used in microfluidic devices for mixing, chemical reaction, detection, partic...
A polymer microfluidic device has been fabricated using rapid prototyping techniques. The device was...
Carbon dioxide (CO2)-laser processing of glasses is a versatile maskless writing technique to engrav...
Laser machining could be an alternative way for the fabrication of microchannels. In this study, las...
This paper deals with CO 2 laser machining of a suitable amorphous polymer (PMMA) as a flexible tech...
Fabrication of microfluidic devices has always been a challenging endeavour due to its characteristi...
Polymer microchannels can be commonly processed using many non-lithographic methods for reducing the...
CO2 laser machining represents a flexible technique for the rapid fabrication of miniaturized polyme...
We demonstrate the capability of a laser micromachining workstation for cost-effective manufacturing...
Microfluidics technology shows a wide variety of applications in multiple research areas. Up to now,...
A low cost manufacturing method for creating polymer microfluidic devices with microfeatures that ha...
The development and growth of microfluidics has been mainly based on various novel fabrication techn...
Thesis (Master's)--University of Washington, 2018Microfluidic devices are currently used in a wide r...
Laser patterning on polymeric materials is considered a green and rapid manufacturing process with l...
Microfluidic devices can process and manipulate small amounts of fluids (nanoliters), using channels...
Microchannel is widely used in microfluidic devices for mixing, chemical reaction, detection, partic...
A polymer microfluidic device has been fabricated using rapid prototyping techniques. The device was...
Carbon dioxide (CO2)-laser processing of glasses is a versatile maskless writing technique to engrav...
Laser machining could be an alternative way for the fabrication of microchannels. In this study, las...
This paper deals with CO 2 laser machining of a suitable amorphous polymer (PMMA) as a flexible tech...
Fabrication of microfluidic devices has always been a challenging endeavour due to its characteristi...
Polymer microchannels can be commonly processed using many non-lithographic methods for reducing the...
CO2 laser machining represents a flexible technique for the rapid fabrication of miniaturized polyme...
We demonstrate the capability of a laser micromachining workstation for cost-effective manufacturing...
Microfluidics technology shows a wide variety of applications in multiple research areas. Up to now,...
A low cost manufacturing method for creating polymer microfluidic devices with microfeatures that ha...
The development and growth of microfluidics has been mainly based on various novel fabrication techn...
Thesis (Master's)--University of Washington, 2018Microfluidic devices are currently used in a wide r...
Laser patterning on polymeric materials is considered a green and rapid manufacturing process with l...
Microfluidic devices can process and manipulate small amounts of fluids (nanoliters), using channels...
Microchannel is widely used in microfluidic devices for mixing, chemical reaction, detection, partic...
A polymer microfluidic device has been fabricated using rapid prototyping techniques. The device was...
Carbon dioxide (CO2)-laser processing of glasses is a versatile maskless writing technique to engrav...